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首页> 外文期刊>International journal of mechanics and materials in design >A dynamic XFEM formulation for crack identification
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A dynamic XFEM formulation for crack identification

机译:用于裂纹识别的动态XFEM公式

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Nelder-Mead (NM) and Quasi-Newton (QN) optimization methods are used for the numerical solution of crack identification problems in elastodynamics. Fracture is modeled by the eXtended Finite Element Method. The Newmark-beta method with Rayleigh damping is employed for the time integration. The effects of various dynamical test loads on the crack identification are investigated. For a time-harmonic excitation with a single frequency and a short-duration signal measured along part of the external boundary, the crack is detected through the solution of an inverse time-dependent problem. Compared to the static load, we show that the dynamic loads are more effective for crack detection problems. Moreover, we tested different dynamic loads and find that NM method works more efficient under the harmonic load than the pounding load while the QN method achieves almost the same results for both load types.
机译:Nelder-Mead(NM)和拟牛顿(QN)优化方法用于弹性力学中裂纹识别问题的数值求解。断裂通过扩展有限元方法建模。时间积分采用具有瑞利​​阻尼的Newmark-beta方法。研究了各种动态测试载荷对裂纹识别的影响。对于具有单频率和沿外部边界的一部分测得的短时信号的时谐激励,可通过解与时间有关的逆问题来检测裂纹。与静态载荷相比,我们表明动态载荷对裂纹检测问题更有效。此外,我们测试了不同的动态负载,发现NM方法在谐波负载下比冲击负载更有效,而QN方法在两种负载类型下均获得几乎相同的结果。

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